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Testing of mechanical properties of 713 and 738 inconels for advanced reactors

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1. Berka, J., Hlinčík, T., Víden, I., Hudský, T., Vít, J. Progress in Nuclear Energy2015, 85, 156–163.10.1016/j.pnucene.2015.06.003Search in Google Scholar

2. Berka, J., Matěcha, J., Černý, M., Víden, I., Sus, F., Hájek, P. Nuclear Engineering and Design2012, 251, 203–207.10.1016/j.nucengdes.2011.10.045Search in Google Scholar

3. Natesan K., Purohit, A., Tam S. W.: report NUREG/CR-6824: Materials Behavior in HTGR Environments 2003, Office of Nuclear Regulatory Research, Washington.Search in Google Scholar

4. Yun, M. H., Ennis, J. P., Nickel, H., Schuster, H. Journal of Nuclear Materials1984, 125, 258–27210.1016/0022-3115(84)90553-1Search in Google Scholar

5. Graham, W. L. Journal of Nuclear Materials1990, 171, 76–83.10.1016/0022-3115(90)90350-VSearch in Google Scholar

6. Cabet, C., Duprey, B. Nuclear Engineering and Design2012, 251, 139–145.10.1016/j.nucengdes.2011.11.001Search in Google Scholar

7. Řičánková, V., Němec K.: The image analyses utilization at nickel-base superalloy degradation classification 2008, Diploma thesis, Brno.Search in Google Scholar

8. Otáhal V.: Vady odlitků, atlas vad: železné a neželezné slitiny, MetalCasting and Foundry Conslut, Brno.Search in Google Scholar

eISSN:
1804-1213
Langue:
Anglais
Périodicité:
4 fois par an
Sujets de la revue:
Industrial Chemistry, Chemical Engineering, Materials Sciences, Ceramics and Glass